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OPTIMAL DESIGN OF THE LINKAGE BETWEEN TWO DOWNHOLE HYDROCYCLONES IN SERIES

机译:两个系列下井液力偶合器的优化连接设计

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Downhole Oil/Water Separating System is the key technology to bring the produced fluid with 90% water cut or more from reservoir to the ground. Hydrocyclone is widely used as the downhole separator to separate oil from the produced fluid before water's reinjection into the reservoir. Hydrocyclone can obtain high separating efficiency with a simple structure. Two hydrocyclones used in series is the new hot spot about the technology of downhole separation but it is limited for wildly use by the relatively small wellbore diameter. Two hydrocylones used in series can assure perfect separation of the oil outlet and the water outlet. The design and its optimal improvement are presented in this paper of the linkage between the water outlet of the first hydrocyclone and the inlet of the second one. Some experiments based on CFD would show its function is presented in this paper as the path between the two hydrocyclones and as the rotary of the second separator.
机译:井下油水分离系统是将含水率达90%或以上的采出液从储层运至地面的关键技术。水力旋流器广泛用作井下分离器,以在将水重新注入储层之前将油与采出液分离。水力旋流器结构简单,分离效率高。串联使用的两个水力旋流器是井下分离技术的新热点,但由于井眼直径相对较小,它被广泛使用。串联使用的两个水力旋流器可以确保出油口和出水口的完美分离。本文介绍了第一个水力旋流器的出水口与第二个水力旋流器的进水口之间的连接装置的设计及其最佳改进。一些基于CFD的实验表明,它的功能在本文中以两个水力旋流器之间的路径以及第二个分离器的旋转形式给出。

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